1377576-63-0Relevant academic research and scientific papers
COMPOUND FOR ORGANIC ELECTRONIC ELEMENT, ORGANIC ELECTRONIC ELEMENT USING THE SAME, AND AN ELECTRONIC DEVICE THEREOF
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Paragraph 0147; 0154; 0160-0163; 0201-0205, (2020/06/13)
Discloses a novel compound capable of improving the luminous efficiency, stability and lifetime of an element, and an organic electronic element, or an electronic device using the same. (by machine translation)
Fused phenanthridine derivatives substituted with aryl or heteroaryl, and organic electroluminescent device including the same
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Paragraph 0327-0330, (2018/03/28)
Aryl group or a heteroaryl group substituted [...] phenanthridine derivatives of formula 1 to ball number encoded. [Formula 1] [In said formula 1, Ar1 Is phenyl or pyridyl [...], Z1 And the O or S, L is a phenyl or pyridyl [...], Ar2 To is selected from the group represented by either formula 3] [Formula 3] , , , , (by machine translation)
Compound Containing Five Membered heterocyclic compound, And Organic Electronic Element Using The Same, Terminal Thereof
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Paragraph 0075-0077; 0080-0081, (2016/10/27)
PURPOSE: A compound containing 5-membered heterocycles which is synthesized by a compound containing two or more 5-membered heterocycles is provided to be used as a hole injection material, a hole transport material, a light emitting material, and an electron transport material. CONSTITUTION: A compound is denoted by chemical formula 1. An organic electric device comprises one or more organic layers containing the compound. The organic layers are formed with the compound by a soluble process. The organic electric device comprises a first electrode, one or more organic layers, and a second electrode which are sequentially laminated. The organic layer is one of a hole injection layer, a hole transport layer, a light emitting layer, an electron transport layer, and an electron injection layer. A terminal comprises a display device containing the organic electric device, and a control unit which drives the display device.
COMPOUND COMPRISING A FIVE-MEMBERED HETERO RING, AN ORGANIC ELECTRICAL ELEMENT USING THE SAME AND A TERMINAL THEREOF
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Paragraph 0057; 0061-0062, (2013/03/28)
Disclosed are a compound comprising a five-membered hetero ring, an organic electrical element using the same and a terminal thereof.
NOVEL ORGANIC ELECTROLUMINESCENT COMPOUNDS AND ORGANIC ELECTROLUMINESCENT DEVICE USING THE SAME
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Page/Page column 148-149, (2013/06/27)
The present invention relates to a novel organic electroluminescent compound and an organic electroluminescent device containing the same. Using the organic electroluminescent compounds of the present invention, it is possible to manufacture an OLED devic
NOVEL ORGANIC ELECTROLUMINESCENCE COMPOUNDS AND ORGANIC ELECTROLUMINESCENCE DEVICE USING THE SAME
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Paragraph 131-133, (2013/03/26)
The present invention relates to a novel organic luminescent compound and an organic electroluminescence device containing the same. The compounds according to the present invention have high luminous efficiency and long operation lifetime. Therefore, they can produce an organic electroluminescent device which improves power consumption.
NOVEL ORGANIC ELECTROLUMINESCENCE COMPOUNDS AND ORGANIC ELECTROLUMINESCENCE DEVICE USING THE SAME
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Paragraph 154; 157; 158, (2013/03/26)
The present invention relates to novel organic electroluminescence compounds and an organic electroluminescence device containing the same. The compounds according to the present invention have high luminous efficiency and long operation lifetime. Therefore, they can produce an organic electroluminescence device having enhanced power consumption efficiency.
NOVEL COMPOUND FOR ORGANIC ELECTRONIC MATERIAL AND ORGANIC ELECTROLUMINESCENT DEVICE USING THE SAME
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Page/Page column 34, (2012/06/01)
Provided are a novel compound for an organic electronic material and an organic electroluminescent device using the same. The compound for an organic electronic material according to the present invention has high electron transport efficiency, thereby preventing crystallization at the time manufacturing of a device, and allows a layer to be easily formed, thereby improving current characteristics of the device, and thus an OLED device having a lowered driving voltage and improved power efficiency as well as superior luminous efficiency and lifespan characteristics as compared with the existing material can be manufactured.
